Kanosue K, Nakayama T, Andrew P D, Shen Z, Sato M
Brain Res. 1986 Jul 30;379(1):90-7. doi: 10.1016/0006-8993(86)90259-3.
Activities of somatosensory relay neurons responding to orofacial mechanical stimulation were examined in the ventrobasal complex of the thalamus (VB) and in the trigeminal main sensory nucleus (MSN) during EEG desynchronization in urethane-anesthetized rats. EEG desynchronization was induced by scrotal warming in a temperature range of 35-40 degrees C. Responses of most VB neurons to receptive-field stimulation were augmented during EEG desynchronization, when compared to responses during synchronization. Spontaneous activity of VB neurons also increased with EEG desynchronization. Responses of MSN neurons to receptive-field stimulation did not change appreciably when the EEG pattern was altered. If a VB neuron was induced by iontophoretic application of glutamate to fire at the same rate as seen during EEG desynchronization, a similar increased response to receptive-field stimuli was also observed. The augmented response of the VB neuron during desynchronization may thus have resulted from increased excitability of the neuron itself.
在乌拉坦麻醉的大鼠脑电图去同步化过程中,研究了丘脑腹侧基底复合体(VB)和三叉神经主感觉核(MSN)中对口腔面部机械刺激产生反应的躯体感觉中继神经元的活动。通过在35 - 40摄氏度范围内阴囊升温诱导脑电图去同步化。与同步期间的反应相比,大多数VB神经元在脑电图去同步化期间对感受野刺激的反应增强。VB神经元的自发活动也随着脑电图去同步化而增加。当脑电图模式改变时,MSN神经元对感受野刺激的反应没有明显变化。如果通过离子电渗法应用谷氨酸诱导VB神经元以与脑电图去同步化期间相同的速率放电,也会观察到对感受野刺激的类似增强反应。因此,去同步化期间VB神经元反应增强可能是由于神经元自身兴奋性增加所致。